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Partial discharge characteristics of electrical treeing in XLPE insulation exposed to voltages of different rise times

机译:XLPE绝缘中电岭局部放电特性暴露于不同上升时间的电压

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The use of pulse width modulated (PWM) waveforms allows a more flexible energy applications and management. The downside is that under such operating conditions the voltage stress imposed on the insulation systems increases, particularly as the frequency content is considerably higher than at the conventional 50 Hz sinusoidal waveform. Among various degradation mechanisms, electrical treeing is one important processes and it can be linked with a presence of partial discharge (PD) activity. In this paper, the changes in PD characteristics at different stages of degradation by electrical treeing were investigated for XLPE based insulation exposed to rapidly changing voltages of varying magnitude. The tested material samples were subjected to two square voltage shapes, each characterized by their rise-time. Here the shorter was 1 ps and the longer 0.5 ms, all tests run at 414 Hz. To compare the voltage endurance, the voltage level was gradually increased until detectable PD activity and tree initiation could be observed, both electrically and optically. Typically continuous PD appearance was observed between 23 and 32 kVpp. The total number of PDs and their characteristics were monitored as the trees were gradually growing. Here the experimental results shows that the PDs appears at lower voltage magnitudes for the shorter rise times and that the trees had a significantly less branched appearance as compared to the longer voltage rise time. These results resemble the observations that recently been presented with tests on DC voltage pre-stressed material samples exposed to impulses of reversed polarity. Additionally the measured PD characteristics were non-symmetric, having a clear polarity dependence. This finding suggests a possibility to use the presented approach for a more detailed investigating of degradation processes in solid insulation systems suitable for both HVAC and HVDC applications.
机译:使用脉冲宽度调制(PWM)波形允许更灵活的能量应用和管理。缺点是在这种操作条件下,施加在绝缘系统上的电压应力增加,特别是随着频率内容比在传统的50Hz正弦波形处的频率上高。在各种降解机制中,电曲线是一种重要过程,它可以与局部放电(Pd)活性的存在相关。本文研究了通过电动曲线的不同阶段的PD特性的变化,用于XLPE基于基于XLPE的绝缘,暴露于不同幅度的快速变化的电压。经过测试的材料样品进行两个方形电压形状,每个方形以其升高为特征。在这里,较短的是1 ps,较长的0.5 ms,所有测试在414 Hz运行。为了比较电压耐久性,电压水平逐渐增加,直到可以在电气和光学地观察到可检测的PD活性和树开始。通常在23至32 kVPP之间观察到连续的PD外观。在树木逐渐增长时监测PDS总数及其特征。这里,实验结果表明,与较长电压上升时间相比,PD在较短的上升时间下,PDS出现在较短的上升时间,并且树木具有明显更小的分支外观。这些结果类似于最近在接触逆转极性的冲动的DC电压预应力材料样品上呈现的观察结果。另外,测量的PD特性是非对称的,具有明显的极性依赖性。该发现表明,使用所提出的方法可以更详细地研究适用于HVAC和HVDC应用的固体绝缘系统中的降解过程。

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